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Ultrafast nonlinear photoresponse of single-wall carbon nanotubes: a broadband degenerate investigation

机译:超快非线性光响应着单壁球长大的碳纳米管:宽带退化调查

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摘要

Understanding of the fundamental photoresponse of carbon nanotubes has broad implications for various photonic and optoelectronic devices. Here, Z-scan and pump-probe spectroscopy performed across 600-2400 nm were combined to give a broadband 'degenerate' mapping of the nonlinear absorption properties of single-wall carbon nanotubes (SWNTs). In contrast to the views obtained from non-degenerate techniques, sizable saturable absorption is observed from the visible to the near-infrared range, including the spectral regions between semiconducting excitonic peaks and metallic tube transitions. In addition, the broadband mapping unambiguously reveals a photobleaching to photoinduced absorption transition feature within the first semiconducting excitonic band similar to 2100 nm, quantitatively marking the long-wavelength cut-off for saturable absorption of the SWNTs investigated. Our findings present a much clearer physical picture of SWNTs' nonlinear absorption characteristics, and help provide updated design guidelines for SWNT based nonlinear optical devices.
机译:理解的基本光响应碳纳米管有着广泛的含义各种光子和光电设备。在这里,Z-scan pump-probe光谱学在600 - 2400海里的总和宽带“退化”的映射着单壁球长大的非线性吸收特性碳纳米管(纳米)。观点来自简技术,相当大的饱和吸收的观察可见近红外范围,包括半导体激子的之间的光谱区域高峰和金属管过渡。明确地揭示了一个宽带映射光漂白光诱导的吸收在第一个过渡特性半导体激子的乐队类似于2100海里,定量标志着长波长截止饱和吸收的纳米管调查。纳米管的物理图像的非线性吸收特征,并帮助提供更新的设计基于碳纳米的非线性光学的指导方针设备。

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